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Evaluating the influence of novel charge transport materials on the photovoltaic properties of MASnI3 solar cells

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DataONE2024-01-17 更新2024-06-08 收录
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In recent decades, substantial advancements have been made in photovoltaic technologies, leading to impressive power conversion efficiencies exceeding 25% in perovskite solar cells (PSCs). Tin-based perovskite materials, characterized by their low band gap (1.3 eV), exceptional optical absorption, and high carrier mobility, have emerged as promising absorber layers in PSCs. Achieving high performance and stability in PSCs critically depends on the careful selection of suitable charge transport layers (CTLs). This research investigates the effects of five copper-based hole transport materials and two carbon-based electron transport materials in combination with methyl ammonium tin iodide (MASnI3). The carbon-based CTLs exhibit excellent thermal conductivity and mechanical strength, while the copper-based CTLs demonstrate high electrical conductivity. The study comprehensively analyzes the influence of these CTLs on PSC performance, including band alignment, quantum efficiency, thickness,..., , , # Evaluating the influence of novel charge transport materials on the photovoltaic properties of MASnI3 solar cells Manuscript: Evaluating the Influence of Novel Charge Transport Materials on the Photovoltaic Properties of MASnI3 Solar Cells Authors: Khalid Afridi (1), Muhammad Noman(1), Shayan Tariq Jan(1,2) Affiliation: 1 U.S.-Pakistan Centre for Advanced Studies in Energy, University of Engineering & Technology, Peshawar, Pakistan ``` 2 Department of Energy Engineering Technology, University of Technology, Nowshera, Pakistan ``` Contact Information: Muhammad Noman, Ph. D. ``` Address: Renewable Energy Engineering, U.S. Pakistan Center for Advanced Studies in Energy, UET Peshawar 25000, Pakistan. Phone: +92-333-9177218 E-mail: muhammad.noman@uetpeshawar.edu.pk ORCID IDs:0000-0001-8718-6386 ``` Data and File Overview Total data Files: 1 CVS files: 1 Methodological Information: \* Methods of data collection/generation: see manuscript for details. Table ...
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2025-07-26
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